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首页> 外文期刊>Journal of nanomaterials >Biocomposite of Cassava Starch Reinforced with Cellulose Pulp Fibers Modified with Deposition of Silica (SiO2) Nanoparticles
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Biocomposite of Cassava Starch Reinforced with Cellulose Pulp Fibers Modified with Deposition of Silica (SiO2) Nanoparticles

机译:木薯淀粉增强纤维素纸浆纤维改性的二氧化硅(SiO2)纳米粒子的生物复合材料。

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摘要

Eucalyptuspulp cellulose fibers were modified by the sol-gel process for SiO2superficial deposition and used as reinforcement of thermoplastic starch (TPS). Cassava starch, glycerol, and water were added at the proportion of 60/26/14, respectively. For composites, 5% and 10% (by weight) of modified and unmodified pulp fibers were added before extrusion. The matrix and composites were submitted to thermal stability, tensile strength, moisture adsorption, and SEM analysis. Micrographs of the modified fibers revealed the presence of SiO2nanoparticles on fiber surface. The addition of modified fibers improved tensile strength in 183% in relation to matrix, while moisture adsorption decreased 8.3%. Such improvements were even more effective with unmodified fibers addition. This result was mainly attributed to poor interaction between modified fibers and TPS matrix detected by SEM analysis.
机译:桉木浆纤维素纤维通过溶胶-凝胶法进行改性,用于SiO2的表面沉积,并用作热塑性淀粉(TPS)的增强剂。木薯淀粉,甘油和水的比例分别为60/26/14。对于复合材料,在挤出前加入5%和10%(重量)的改性和未改性纸浆纤维。对基体和复合材料进行热稳定性,拉伸强度,水分吸附和SEM分析。改性纤维的显微照片显示纤维表面上存在SiO2纳米颗粒。改性纤维的添加相对于基质提高了183%的拉伸强度,而水分吸附降低了8.3%。使用未改性的纤维,这种改进甚至更加有效。该结果主要归因于通过SEM分析检测到的改性纤维与TPS基质之间的不良相互作用。

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